Transfert de rayonnement Télédétection Spectroscopie IR Correction atmosphérique Propriétés optiques des gaz et aérosols
— 2025 — Nixon, C., Bézard, B., Cornet, T., Park Coy, B., de Pater, I., Es-Sayeh, M., et. al : The atmosphere of Titan in late northern summer from JWST and Keck observations, Nature Astronomy, 9, 969–98, https://doi.org/10.1038/s41550-025-02537-3 — 2023 — Es-Sayeh, M., Rodriguez, S., et. al : Updated radiative transfer model for titan in the near-infrared wavelength range: validation against huygens atmospheric and surface measurements and application to the Cassini/VIMS observations of the dragonfly landing area. The Planetary Science Journal, 4(3), 44, https://doi.org/10.3847/PSJ/acbd37 Blake, J. S., Fletcher, L. N., Orton, G. S., Antuñano, A., Roman, M. T., Kasaba, Y., Fujiyoshi, T., Melin, H., Bardet, D., Sinclair, J. A., Es-Sayeh, M. : Saturn’s seasonal variability from four decades of ground-based mid-infrared observations. Icarus, 392, 115347, https://doi.org/10.1016/j.icarus.2022.115347
iAERUS4FCI: aerosol remote sensing using MTG/FCI geosynchronous satellite (EUMETSAT project) Titan observations with the James Webb Space Telescope (Guaranteed Time Observations – GTO – program) Titan surface mapping in the near-IR using Cassini/VIMS observations & atmospheric radiative transfer 3D radiative transfer modeling in cloudy planetary atmospheres (applications to Titan, Venus and Mars): ANR RaD-net